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Operational and Environmental Conditions forEfficient Biological Nutrient Removal in an UrbanWastewater Treatment Plant

机译:在城市污水处理厂中高效去除生物营养的运行和环境条件

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This paper examines correlations and processes related to nutrient removal in a wastewater treatment plant (WWTP), verifying the efficiency of plant improvements and the extent that public awareness campaigns have had on treated water quality. Increases in water pH value resulted in a decrease in nitrate nitrogen and phosphate phosphorus levels in treated wastewater, demonstrating a better performance of microorganisms with higher pH values. On the contrary, both nutrients proved to increase with increasing temperatures, although there were no significant differences in the nitrogen loading rate, representing a good behavior of the WWTP despite the considered season. This fact can be explained by a new storm tank located at the sewage plant that cushions sharp-point organic loads, allowing a more stable performance of the WWTP. An increase in electrical conductivity resulted in higher phosphate phosphorus levels in the effluent, indicating a special sensitivity of phosphorus accumulating organisms (PAOs) to high osmotic pressures. High C/N ratios, both chemical oxygen demand and biochemical oxygen demand resulted in lower nitrification rates, indicating the favored growth of heterotrophs over slow-growing nitrifying bacteria. Sludge age proved to have a strong effect on nutrients removal, increasing the diversity of ammonia oxidizing bacteria but worsening the nitrogen removal efficiency with older solids residence time. In order to meet the requirements of the Council Directive (91/271/CEE) for phosphate phosphorus removal, an anaerobic selector for PAOs growing should be implemented.
机译:本文研究了废水处理厂(WWTP)中与养分去除相关的过程,验证了工厂改进的效率以及公众对处理后水质的认识程度。水pH值的增加导致处理后的废水中硝酸盐氮和磷酸盐磷水平的降低,这表明具有较高pH值的微生物的性能更好。相反,尽管氮含量没有显着差异,但两种营养素均随着温度的升高而增加,尽管考虑了季节,但表明污水处理厂的良好行为。这个事实可以用位于污水处理厂的新雨水箱来解释,该雨水箱可以缓冲尖锐的有机负荷,从而使污水处理厂的性能更加稳定。电导率的增加导致废水中磷的含量更高,表明磷累积生物(PAO)对高渗透压具有特殊的敏感性。高C / N比(化学需氧量和生化需氧量)导致较低的硝化速率,表明异养生物比缓慢生长的硝化细菌更易生长。污泥年龄被证明对去除养分有很强的影响,增加了氨氧化细菌的多样性,但随着固体滞留时间的延长,脱氮效率变差。为了满足理事会指令(91/271 / CEE)去除磷和磷的要求,应为PAO的生长使用厌氧选择器。

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